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Visualization of protein compartmentation within the plasma membrane of living yeast cells

机译:可视化活酵母细胞质膜内的蛋白质区室

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Different distribution patterns of the arginine/H+ symporter Can1p, the H+ plasma membrane ATPase Pma1p, and the hexose transport facilitator Hxt1p within the plasma membrane of living Saccharomyces cerevisiae cells were visualized using fluorescence protein tagging of these proteins. Although Hxt1p-GFP was evenly distributed through the whole cell surface, Can1p-GFP and Pma1p-GFP were confined to characteristic subregions in the plasma membrane. Pma1p is a well-documented raft protein. Evidence is presented that Can1p, but not Hxt1p, is exclusively associated with lipid rafts, too. Double labeling experiments with Can1p-GFP- and Pma1p-RFP-containing cells demonstrate that these proteins occupy two different nonoverlapping membrane microdomains. The size of Can1p-rich (Pma1p-poor) areas was estimated to 300 run. These domains were shown to be stable in growing cells for >30 min. To our knowledge, this is the first observation of a cell polarization-independent lateral compartmentation in the plasma membrane of a living cell. [References: 54]
机译:使用这些蛋白的荧光蛋白标记,可以观察到精氨酸/ H +转运蛋白Can1p,H +质膜ATPase Pma1p和己糖运输促进剂Hxt1p在活酵母细胞质膜内的不同分布方式。尽管Hxt1p-GFP均匀地分布在整个细胞表面,但Can1p-GFP和Pma1p-GFP被限制在质膜的特征性子区域。 Pma1p是一个有据可查的筏蛋白。有证据表明,Can1p,但不是Hxt1p,也仅与脂质筏有关。使用含Can1p-GFP和Pma1p-RFP的细胞进行的双标记实验表明,这些蛋白质占据了两个不同的非重叠膜微区。富含Can1p的地区(贫Pma1p)的面积估计为300游程。这些结构域显示在生长的细胞中稳定> 30分钟。据我们所知,这是在活细胞质膜中首次观察到与细胞极化无关的侧向区室。 [参考:54]

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